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Imaging of non tumorous and tumorous human brain tissue with full-field optical coherence tomography

机译:使用全场光学相干层析成像技术对非肿瘤和肿瘤性人脑组织进行成像

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摘要

A prospective study was performed on neurosurgical samples from 18 patients to evaluate the use of Full-Field Optical Coherence Tomography (FF-OCT) in brain tumor diagnosis. FF-OCT captures en face slices of tissue samples at 1μm resolution in 3D with a typical 200μm imaging depth. A 1cm2 specimen is scanned at a single depth and processed in about 5 minutes. This rapid imaging process is non-invasive and 30 requires neither contrast agent injection nor tissue preparation, which makes it particularly well suited to medical imaging applications. Temporal chronic epileptic parenchyma and brain tumors such as meningiomas, low- grade and high-grade gliomas, and choroid plexus papilloma were imaged. A subpopulation of neurons, myelin fibers and CNS vasculature were clearly identified. Cortex could be discriminated from white matter, but individual glial cells as astrocytes (normal or reactive) or oligodendrocytes were not observable. This study reports for the first time on the feasibility of using FF-OCT in a real-time manner as a label-free non-invasive imaging technique in an intra-operative neurosurgical clinical setting to assess tumorous glial and epileptic margins.
机译:对来自18位患者的神经外科样本进行了一项前瞻性研究,以评估全视野光学相干断层扫描(FF-OCT)在脑肿瘤诊断中的应用。 FF-OCT以典型的200μm成像深度以3D分辨率以1μm的分辨率捕获组织样本的面部切片。在单个深度下扫描1cm2的样本,并在大约5分钟内进行处理。这种快速成像过程是非侵入性的,并且不需要造影剂注射或组织准备30,这使其特别适合于医学成像应用。对颞部慢性癫痫实质和脑肿瘤(如脑膜瘤,低度和高度神经胶质瘤以及脉络丛乳头状瘤)进行了成像。清楚地确定了神经元,髓鞘纤维和中枢神经系统脉管系统的亚群。皮质可以与白质区分开,但是不能观察到单个胶质细胞如星形胶质细胞(正常或反应性)或少突胶质细胞。这项研究首次报道了在术中神经外科临床环境中以实时方式将FF-OCT用作无标签非侵入性成像技术以评估肿瘤性神经胶质和癫痫边缘的可行性。

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